and II numbered cylinders with radii r = 2m and weight W were connected to each other with the help of a 5m long rope, which was assumed to be not elongated, and to the outside with the help of pendulum feet at points A and B. Cylinder III with radius r = 3m and weight 3W was placed on the other two cylinders as shown in the figure. Determine the forces on the A and B pendulum feet, the rope force, the action-reaction forces C and D, and the slope of the A pendulum, neglecting the friction at the contact points.
and II numbered cylinders with radii r = 2m and weight W were connected to each other with the help of a 5m long rope, which was assumed to be not elongated, and to the outside with the help of pendulum feet at points A and B. Cylinder III with radius r = 3m and weight 3W was placed on the other two cylinders as shown in the figure. Determine the forces on the A and B pendulum feet, the rope force, the action-reaction forces C and D, and the slope of the A pendulum, neglecting the friction at the contact points.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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I and II numbered cylinders with radii r = 2m and weight W were connected to each other with the help of a 5m long rope, which was assumed to be not elongated, and to the outside with the help of pendulum feet at points A and B. Cylinder III with radius r = 3m and weight 3W was placed on the other two cylinders as shown in the figure. Determine the forces on the A and B pendulum feet, the rope force, the action-reaction forces C and D, and the slope of the A pendulum, neglecting the friction at the contact points.
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